Digital Ecosystem Interconnection via Meta ID and MIDL Translation
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Solution Overview
Problem
Conventional systems lack the capability to interconnect, translate, and transition between disparate digital ecosystems, requiring users to log out and sign in again when moving between different virtual environments, which is inefficient and requires higher processing power and memory.
Innovation Solution
A system that includes processing devices and memory devices with computer-readable program code to manage user authentication and data payload transmission between digital ecosystems, using Metaverse Interface Definition Language (MIDL) for efficient data translation and registering users with meta IDs for seamless transitions.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Loss of time
If conventional systems are used for interconnection between digital ecosystems, then users must log out and sign in again when transitioning between ecosystems, but this results in loss of time and reduced productivity
Solution Approach 1:
The system performs preliminary authentication by obtaining authentication credentials from a first digital ecosystem before the user actually transitions. This advance authentication preparation eliminates the need for users to log in again when moving to a second ecosystem, thereby reducing authentication time and maintaining productivity
Solution Approach 2:
The system acts as an intermediary between disparate digital ecosystems, managing authentication credentials and user transitions. This intermediary function enables seamless communication and credential verification across ecosystem boundaries, eliminating repeated login requirements and improving transition efficiency
2Adaptability or versatility
If conventional systems handle data translation between digital ecosystems, then data must be re-authenticated and re-transmitted, but this requires higher processing power and memory
Solution Approach 1:
The system merges authentication and data transmission functions into a single integrated process. By combining credential verification with data payload transmission, the system eliminates redundant processing steps and reduces the overall processing power and memory required for data translation between ecosystems
Solution Approach 2:
The system implements a universal authentication mechanism that works across multiple disparate digital ecosystems. This multi-functional approach allows a single authentication process to enable access to multiple ecosystems, reducing the need for separate authentication and data handling procedures in each ecosystem and thereby lowering processing requirements
Data Source
AI summary
Embodiments of the present invention provide a system for interconnection, translation, and transition between disparate digital ecosystems. The system is configured for determining that a user is requesting to access a first digital ecosystem, receiving a first authentication credentials of the user from the first digital ecosystem for verification, determining that the verification of the first authentication credentials is successful and provide access to the first digital ecosystem, determining that the user is requesting transition to a second digital ecosystem from the first digital ecosystem, receiving second authentication credentials of the user from the second digital ecosystem for verification, determining that the verification of the second authentication credentials is successful and provide access to the second digital ecosystem, and preparing and transmitting a data payload to the second digital ecosystem.


